教育用纳米卫星的姿态控制研究

Ú. Martínez, Luis Bravo, D. Gligor, K. Olfe, Á. Bello, J. M. Ezquerro, Jacobo Rodríguez, Pablo Salgado
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引用次数: 1

摘要

介绍了ESAT平台的三轴姿态控制。ESAT是一颗模块化纳米卫星,实现了流行的10x10x10厘米立方体卫星标准,专为不同教育水平的实践学习以及专业培训而设计。ESAT具有全套的航天器子系统特征(电源、机载数据处理、姿态控制、通信和有效载荷)。该卫星可以拆卸,集中于每个子系统,一次一个,或全部一起使用,并具有灵活的地面部分。使用ESAT平台的课程在我校作为航空航天工程硕士学位最后一年的一部分,以及在ESA学院等其他机构传授。它们涵盖了从子系统设计到测试和航天器操作的各个方面。此外,该平台还用于硕士论文和研究活动。虽然目前在课程中使用的版本只允许单轴姿态控制,但ESAT正在不断发展,并且已经开发了两个原型卫星,允许基于反作用轮和/或磁力矩器的三轴控制,这对于测试和验证姿态确定和控制算法至关重要。为此目的,地面支持设备也进行了更新,以便能够在三轴上进行转弯,并开发了新的试验台和完整的磁场模拟器。本工作旨在展示新的三轴平台设计及其主要功能
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Attitude control research with educational nanosatellites
This paper introduces the three-axis attitude control of the ESAT platform. ESAT is a modular nanosatellite that implements the popular 10x10x10 cm CubeSat standard, designed for hands-on learning at different educational levels as well as professional training. ESAT features the full set of characteristic spacecraft subsystems (power, on-board data handling, attitude control, communications, and payload). The satellite can be disassembled to focus on each subsystem, one at a time, or used all together, and features a flexible ground segment. Courses using the ESAT platform are imparted in our university, as part of the last year of the master’s degree in Aerospace engineering, and in other institutions like the ESA Academy. They cover aspects ranging from subsystems design to testing and spacecraft operations. In addition, the platform is used in master’s thesis and research activities. Although the version that is currently being used in the courses allows only one-axis attitude control, the ESAT is in continuous development and two prototypes of the satellite have already been developed that allow three-axis control based on reaction wheels and/or magnetorquers, which is essential for the testing and verification of attitude determination and control algorithms. For this purpose, the ground support equipment has also been updated to be able to carry out the turns in three axes, with the development of new testbeds and a complete magnetic field simulator. The present work aims to show the new three-axis platform designs and its main functionalities
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